A novel spatial-frequency filtering scheme for x-ray angiograms with simultaneous denoising and enhancement

Zhenghua Huang, Liang Chen, Hao Fang, Tianxu Zhang
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引用次数: 1

Abstract

X-ray angiograms, which suffer from low-contrast and noise, need to be improved by both the image enhancement and denoising techniques. However, the goals of these two tasks usually conflict, which makes it difficult to efficiently combine the enhancement and denoising in one scheme. To solve this problem, we propose a novel spatial-frequency filtering (SFF) scheme to simultaneously enhance and denoise low-quality X-ray cardiovascular angiogram images. The proposed scheme includes three key components: Firstly, a relative total variation method is employed as a guide filter to separate an input image into two parts, including the base layer with strong structures and the detail layer with weak structures and noise. Then the base layer is enhanced by a proposed improved histogram equalization (IHE) method while the detail layer is extracted by a short-time Fourier transform and is further enhanced by using a proposed adaptive correction parameter. Finally, the improved image is the combination of results obtained by the two components. Both quantitative and qualitative results of experiments on real-world low-quality X-ray angiogram images demonstrate that the proposed method outperforms the state-of-the-arts in terms of contrast enhancement, structure preservation, and noise reduction.
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一种同时去噪和增强的x线血管造影空频滤波方法
x线血管造影存在对比度低、噪声大的问题,需要通过图像增强和去噪技术加以改善。然而,这两个任务的目标往往是冲突的,这使得在一种方案中很难有效地将增强和去噪结合起来。为了解决这个问题,我们提出了一种新的空间频率滤波(SFF)方案来同时增强和去噪低质量的x射线心血管造影图像。该方案包括三个关键部分:首先,采用相对总变分法作为引导滤波器,将输入图像分为两部分,即具有强结构的基础层和具有弱结构和噪声的细节层;然后采用改进的直方图均衡化(IHE)方法增强基础层,采用短时傅里叶变换提取细节层,并采用提出的自适应校正参数进一步增强细节层。最后,改进后的图像是两个分量得到的结果的组合。在实际低质量x射线血管造影图像上的定量和定性实验结果表明,所提出的方法在对比度增强、结构保存和降噪方面都优于目前最先进的方法。
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